基于双路参考激励信号参数辨识的非接触电压测量方法
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1.昆明理工大学机电工程学院昆明650504; 2.昆明理工大学理学院昆明650504; 3.云南电网有限责任公司电力科学研究院昆明650217

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TM933.13TH89

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云南省科技厅科技计划项目(202104BN050011,202301AS070028)资助


Non-contact voltage measurement method based on parameter identification of dual reference excitation signals
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1.College of Mechanical and Electrical Engineering, Kunming University of Science and Technology, Kunming 650504, China; 2.College of Science, Kunming University of Science and Technology, Kunming 650504, China; 3.Power Science Research Institute of Yunnan Power Grid Co., Ltd., Kunming 650217, China

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    摘要:

    电容耦合式非接触电压传感器在实际应用中,导线线径、绝缘层厚度、线芯与感应极板的相对位置不同会影响导线线芯与感应极板间的耦合电容大小,并且导线会对感应极板与接地极板间的结构电容产生附加效应,所引起的边缘效应会使结构电容大小也发生变化,使之无法凭借常规LCR仪预先精确测量,造成传感器增益不确定从而导致非接触电压测量精度受限。提出一种基于双路参考激励信号参数辨识的非接触电压测量方法,以实现测量过程中传感器增益的自标定。首先给出含寄生参数的等效模型并剖析其传递函数,将传感器多个内参数简化为2个集总内参数,通过仿真揭示了待测导线影响结构电容边缘效应从而改变其大小的规律。随后提出传感器参数辨识方法,获得考虑寄生参数和导线影响后的传感器内参数作为一固定参量参与电压重构以提升电压测量精度。制作传感器样机并搭建实验平台,完成参数辨识后进行多项实验。结果表明,幅值精度实验中幅值误差在1%以内,相位精度测试中相位差为0.13°,线径适应性实验可适应不同规格导线且误差最大仅0.15%,干扰信号屏蔽能力测试证实带屏蔽腔的同轴探头抗干扰性能良好。为提高非接触电压测量精度提供了有效解决方案。

    Abstract:

    In practical applications of capacitive coupled non-contact voltage sensors, differences in wire diameter, insulation layer thickness, and the relative position between the wire core and the induction plate can affect the coupling capacitance between the wire core and the induction plate. Additionally, the presence of the wire influences the structural capacitance between the induction plate and the grounding plate, causing edge effects that alter the size of the structural capacitance. As a result, conventional LCR meters cannot accurately measure noncontact voltage, resulting in uncertain sensor gain and limited accuracy in noncontact voltage measurement. To address this issue, a non-contact voltage measurement method based on dual reference excitation signal parameter identification is proposed to achieve self-calibration of sensor gain during the measurement process. Firstly, an equivalent model with parasitic parameters is presented, and its transfer function is analyzed. Multiple internal parameters of the sensor are simplified into two lumped internal parameters. Through simulation, the influence of the measured wire on the edge effects of structural capacitance and its variation is revealed. Subsequently, a sensor parameter identification method is proposed to obtain the internal parameters of the sensor considering parasitic parameters and wire influences as a fixed parameter for voltage reconstruction to improve voltage measurement accuracy. A sensor prototype is developed, and an experimental platform is constructed to perform parameter identification and conduct multiple validation experiments. Experimental results show that the amplitude error in the amplitude accuracy test is within 1%, and the phase difference in the phase accuracy test is 0.13 °. The wire diameter adaptability experiment confirms that the method accommodates wires of different specifications, with a maximum error of only 0.15%. The interference signal shielding ability tests validate that the coaxial probe with a shielding cavity has good anti-interference performance. This provides an effective solution to improve the accuracy of non-contact voltage measurement.

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陈小涛,张文斌,索春光,谭向宇.基于双路参考激励信号参数辨识的非接触电压测量方法[J].仪器仪表学报,2025,46(3):20-29

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  • 在线发布日期: 2025-05-28
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